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Ultra-broadband near-perfect absorption of visible light based on one-dimensional metal-dielectric-metal grating for TM polarization

机译:基于一维金属介质金属光栅的TM极化的超宽带近乎完美吸收可见光

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We numerically and analytically report an ultra-broadband near-perfect absorber based on one-dimensional metal-dielectric-metal grating at visible light for TM polarization. A unit cell of this design is composed of metal-dielectric-metal grating, where the bottom metallic layer and the upper metallic coating are separated from each other by the intermediate dielectric grating. The absorber exhibits an average absorption of over 90% in the range 400-700nm. Moreover, they remain very high over a wide range of incident angle up to 45°.The electromagnetic field distributions are investigated, which reveals that this broadband absorption behavior is ascribed to the combination of surface plasmon resonance and cavity resonance. Furthermore, impedance calculations were carried out to explain the absorption behavior. The ultra-broadband near-perfect angle-robust absorber can be a good candidate for many fascinating applications, including solar-energy harvesting as well as producing artificial colors on a large scale substrate.
机译:在数值上和分析基于在可见光下的一维金属介质金属格栅以用于TM偏振的一维金属介质金属栅格的超宽带近乎完美的吸收器。该设计的单元电池由金属介质金属光栅组成,其中底部金属层和上金属涂层通过中间电介质光栅彼此分离。吸收剂在400-700nm范围内显示出超过90%的平均吸收。此外,它们在多个入射角范围内保持非常高,直到45°。研究了电磁场分布,揭示了这种宽带吸收行为归因于表面等离子体共振和腔共振的组合。此外,进行阻抗计算以解释吸收行为。超宽带近乎完美的角度稳健吸收器可以是许多迷人应用的良好候选者,包括太阳能收集以及在大型衬底上产生人造色素。

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